SGM321/SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers
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1 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers GENERAL DESCRIPTION The (single), SGM358 (dual) and SGM324 (quad) are low cost, rail-to-rail input and output voltage feedback amplifiers. They have a wide input common mode voltage range and output voltage swing, and take the minimum operating supply voltage down to 2.1V. The maximum recommended supply voltage is 5.5V. All are specified over the extended -40 to +85 temperature range. The /358/324 provide 1MHz bandwidth at a low current consumption of 60μA per amplifier. Very low input bias currents of 10pA enable /358/324 to be used for integrators, photodiode amplifiers, and piezoelectric sensors. Rail-to-rail input and output are useful to designers for buffering ASIC in single-supply systems. Applications for this series of amplifiers include safety monitoring, portable equipment, battery and power supply control, and signal conditioning and interfacing for transducers in very low power systems. The is available in the Green SOT-23-5 and SC70-5 packages. The SGM358 comes in the Green SOIC-8, MSOP-8 and DIP-8 packages. The SGM324 is offered in the Green SOIC-14 and TSSOP-14 packages. FEATURES Low Cost Rail-to-Rail Input and Output 0.8mV Typical V OS Unity Gain Stable Gain-Bandwidth Product: 1MHz Very Low Input Bias Current: 10pA Supply Voltage Range: 2.1V to 5.5V Input Voltage Range: -0.1V to +5.6V with V S = 5.5V Low Supply Current: 60μA/Amplifier Small Packaging Available in SOT-23-5 and SC70-5 SGM358 Available in SOIC-8, MSOP-8 and DIP-8 SGM324 Available in SOIC-14 and TSSOP-14 APPLICATIONS ASIC Input or Output Amplifier Sensor Interface Piezoelectric Transducer Amplifier Medical Instrumentation Mobile Communication Audio Output Portable Systems Smoke Detectors Notebook PC PCMCIA Cards Battery-Powered Equipment DSP Interface MARCH 2017 REV. E. 1
2 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers PACKAGE/ORDERING INFORMATION MODEL PACKAGE DESCRIPTION SPECIFIED TEMPERATURE RANGE ORDERING NUMBER PACKAGE MARKING PACKING OPTION SC to +85 YC5/TR 321 Tape and Reel, 3000 SOT to +85 YN5/TR 321 Tape and Reel, 3000 SOT to +85 BYN5/TR 321B Tape and Reel, 3000 SOIC-8-40 to +85 SGM358YS/TR SGM358YS XXXXX Tape and Reel, 4000 SGM358 MSOP-8-40 to +85 SGM358YMS/TR SGM358 YMS XXXXX Tape and Reel, 3000 DIP-8-40 to +85 SGM358YP SGM358YP XXXXX 20 Tube (1000pcs) SGM324 SOIC to +85 SGM324YS14/TR TSSOP to +85 SGM324YTS14/TR NOTE: XXXXX = Date Code and Vendor Code. SGM324YS14 XXXXX SGM324 YTS14 XXXXX Tape and Reel, 2500 Tape and Reel, 3000 Green (RoHS & HSF): defines "Green" to mean Pb-Free (RoHS compatible) and free of halogen substances. If you have additional comments or questions, please contact your SGMICRO representative directly. ABSOLUTE MAXIMUM RATINGS Supply Voltage, +V S to -V S... 6V Common Mode Input Voltage... (-V S) - 0.3V to (+V S) + 0.3V Package Thermal T A = +25 SC70-5, θ JA /W SOT-23-5, θ JA /W SOIC-8, θ JA /W MSOP-8, θ JA /W Storage Temperature Range to +150 Junction Temperature Lead Temperature (Soldering 10sec) ESD Susceptibility HBM V MM...400V RECOMMENDED OPERATING CONDITIONS Operating Temperature Range to +85 OVERSTRESS CAUTION Stresses beyond those listed may cause permanent damage to the device. Functional operation of the device at these or any other conditions beyond those indicated in the operational section of the specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. ESD SENSITIVITY CAUTION This integrated circuit can be damaged by ESD if you don t pay attention to ESD protection. SGMICRO recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete device failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications. DISCLAIMER reserves the right to make any change in circuit design, specification or other related things if necessary without notice at any time. MARCH
3 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers PIN CONFIGURATIONS YN5/ YC5 (TOP VIEW) BYN5 (TOP VIEW) +IN 1 5 +V S OUT 1 5 +V S -V S 2 -V S 2 -IN 3 4 OUT +IN 3 4 -IN SOT-23-5/SC70-5 SOT-23-5 SGM324 (TOP VIEW) SGM358 (TOP VIEW) OUTA 1 14 OUTD OUTA 1 8 +V S -INA IND -INA 2 7 OUTB +INA IND +INA 3 6 -INB +V S V S +INB INC -V S 4 5 +INB -INB 6 9 -INC SOIC-8/MSOP-8/DIP-8 OUTB 7 8 OUTC TSSOP-14/SOIC-14 MARCH
4 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers ELECTRICAL CHARACTERISTICS (At V S = +5V, R L = 100kΩ connected to V S/2, and V OUT = V S/2, unless otherwise noted.) PARAMETER SYMBOL CONDITIONS INPUT CHARACTERISTICS TYP /358/324 MIN/MAX OVER TEMPERATURE -40 to Input Offset Voltage V OS V CM = V S/ mv MAX Input Bias Current I B 10 pa TYP Input Offset Current I OS 10 pa TYP Input Common Mode Voltage Range V CM V S = 5.5V -0.1 to +5.6 V TYP Common Mode Rejection Ratio Open-Loop Voltage Gain CMRR A OL +85 V S = 5.5V, V CM = -0.1V to 4V V S = 5.5V, V CM = -0.1V to 5.6V R L = 5kΩ, V O = +0.1V to +4.9V R L = 100kΩ, V O = V to V Input Offset Voltage Drift ΔV OS/ΔT 2.7 μv/ OUTPUT CHARACTERISTICS Output Voltage Swing from Rail Output Current POWER SUPPLY Operating Voltage Range UNITS db db MIN/MAX V OH R L = 100kΩ V MIN V OL R L = 100kΩ mv MAX V OH R L = 10kΩ V MIN V OL R L = 10kΩ mv MAX I SOURCE R L = 10Ω to V S/2 I SINK ma MIN MIN TYP MIN V MIN V MAX Power Supply Rejection Ratio PSRR V S = +2.5V to +5.5V, V CM = +0.5V db MIN Quiescent Current/Amplifier I Q μa MAX DYNAMIC PERFORMANCE (C L = 100pF) Gain-Bandwidth Product GBP 1 MHz TYP Slew Rate SR G = +1, 2V Output Step 0.52 V/μs TYP Settling Time to 0.1% t S G = +1, 2V Output Step 5.3 μs TYP Overload Recovery Time V IN Gain = V S 2.6 μs TYP NOISE PERFORMANCE Voltage Noise Density e n f = 1kHz 27 nv/ Hz TYP f = 10kHz 20 nv/ Hz TYP MARCH
5 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers TYPICAL PERFORMANCE CHARACTERISTICS At T A = +25, V S = +5V, and R L = 100kΩ connected to V S/2, unless otherwise noted. Small-Signal Step Response G = +1 C L = 100pF R L = 100kΩ Large-Signal Step Response G = +1 C L = 100pF R L = 100kΩ 20mV/div 500mV/div Time (2μs/div) Time (10μs/div) Small-Signal Overshoot (%) Small-Signal Overshoot vs. Load Capacitance G = -5 R FB = 100kΩ Load Capacitance (pf) Small-Signal Overshoot (%) Small-Signal Overshoot vs. Load Capacitance G = -1 R FB = 100kΩ G = +1 R L = 100kΩ G = -1 R FB = 5kΩ Load Capacitance (pf) Output Voltage (V p-p ) Maximum Output Voltage vs. Frequency V S = 5V V S = 2.5V V S = 5.5V Maximum Output Voltage w ithout Slew -Rate Induced Distortion Frequency (khz) Supply Current (μa) Supply Current vs. Supply Voltage Supply Voltage (V) MARCH
6 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers TYPICAL PERFORMANCE CHARACTERISTICS (continued) At T A = +25, V S = +5V, and R L = 100kΩ connected to V S/2, unless otherwise noted. CMRR, PSRR (db CMRR and PSRR vs. Frequency CMRR PSRR Frequency (khz) Voltage Noise (nv/ Hz) Input Voltage Noise Spectral Density vs. Frequency Frequency (khz) Output Voltage (V) Output Voltage vs. Output Current 135 Sourcing Current V S = 3V Sinking Current Output Voltage (V) Output Voltage vs. Output Current Sourcing Current V S = 5V Sinking Current Output Current (ma) Output Current (ma) 80 Supply Current vs. Temperature 120 Open-Loop Gain vs. Temperature Supply Current (μa) Open Loop Gain (db) R L = 5kΩ R L = 100kΩ Temperature ( ) Temperature ( ) MARCH
7 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers TYPICAL PERFORMANCE CHARACTERISTICS (continued) At T A = +25, V S = +5V, and R L = 100kΩ connected to V S/2, unless otherwise noted Common Mode Rejection Ratio vs. Temperature -V S < V CM < (+V S ) - 1.5V Pow er Supply Rejection Ratio vs. Temperature CMRR (db) V S < V CM < (+V S ) PSRR (db) Temperature ( ) Temperature ( ) 2.5V 0V 500mV 0V V S = 5V G = -5 V IN = 500mV Overload Recovery Time Short-Circuit Current (ma) Short-Circuit Current vs. Supply Voltage Time (2μs/div) Supply Voltage (V) MARCH
8 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers APPLICATION NOTES Driving Capacitive Loads The /SGM358/SGM324 can directly drive 250pF in unity-gain without oscillation. The unity-gain follower (buffer) is the most sensitive configuration to capacitive loading. Direct capacitive loading reduces the phase margin of amplifiers and this results in ringing or even oscillation. Applications that require greater capacitive driving capability should use an isolation resistor between the output and the capacitive load like the circuit in Figure 1. The isolation resistor R ISO and the load capacitor C L form a zero to increase stability. The bigger the R ISO resistor value, the more stable V OUT will be. Note that this method results in a loss of gain accuracy because R ISO forms a voltage divider with the R LOAD. Power-Supply Bypassing and Layout The /SGM358/SGM324 can operate from either a single +2.1V to +5.5V supply or dual ±1.05V to ±2.75V supplies. For single-supply operation, bypass the power supply +V S with a 0.1µF ceramic capacitor which should be placed close to the +V S pin. For dual-supply operation, both the +V S and the -V S supplies should be bypassed to ground with separate 0.1µF ceramic capacitors. 2.2µF tantalum capacitor can be added for better performance. +V S 10μF 0.1μF +V S 10μF 0.1μF V IN R ISO C L V OUT Vn Vp V OUT Vn Vp 10μF V OUT Figure 1. Indirectly Driving Heavy Capacitive Load -V S (GND) 0.1μF An improved circuit is shown in Figure 2. It provides DC accuracy as well as AC stability. R F provides the DC accuracy by connecting the inverting input with the output. C F and R Iso serve to counteract the loss of phase margin by feeding the high frequency component of the output signal back to the amplifier s inverting input, thereby preserving phase margin in the overall feedback loop. -V S Figure 3. Amplifier with Bypass Capacitors C F R F R ISO V OUT V IN C L R L Figure 2. Indirectly Driving Heavy Capacitive Load with DC Accuracy For non-buffer configuration, there are two other ways to increase the phase margin: (a) by increasing the amplifier s closed-loop gain or (b) by placing a capacitor in parallel with the feedback resistor to counteract the parasitic capacitance associated with inverting node. MARCH
9 /SGM358/SGM324 1MHz, 60μA, Rail-to-Rail I/O CMOS Operational Amplifiers TYPICAL APPLICATION CIRCUITS Differential Amplifier The circuit shown in Figure 4 performs the difference function. If the resistor ratios are equal to (R 4 /R 3 = R 2 /R 1 ), then V OUT = (V p - V n ) R 2 / R 1 + V REF. Vn Vp R 1 R 2 V OUT Low-Pass Active Filter The low-pass filter shown in Figure 6 has a DC gain of (-R 2 /R 1 ) and the -3dB corner frequency is 1/2πR 2 C. Make sure the filter bandwidth is within the bandwidth of the amplifier. The large values of feedback resistors can couple with parasitic capacitance and cause undesired effects such as ringing or oscillation in high-speed amplifiers. Keep resistor values as low as possible and consistent with output loading consideration. R 3 R 4 C V REF Figure 4. Differential Amplifier V IN R 1 R 2 Instrumentation Amplifier The circuit in Figure 5 performs the same function as that in Figure 4 but with a high input impedance. R 3 = R 1 // R 2 V OUT Vn R 1 R 2 Figure 6. Low-Pass Active Filter V OUT Vp R 3 R 4 V REF Figure 5. Instrumentation Amplifier MARCH
10 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOT-23-5 D 1.90 e1 E1 E b e RECOMMENDED LAND PATTERN (Unit: mm) L A A1 A2 θ 0.2 c Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e BSC BSC e BSC BSC L θ TX
11 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SC70-5 D e e E1 E 1.9 b RECOMMENDED LAND PATTERN (Unit: mm) L L1 A A1 A2 θ 0.20 c Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e 0.65 TYP TYP e BSC BSC L REF REF L θ TX
12 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOIC-8 D e E1 E 5.2 b 1.27 RECOMMENDED LAND PATTERN (Unit: mm) L A A1 θ c A2 Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e 1.27 BSC BSC L θ TX
13 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS MSOP-8 b E1 E 4.8 e RECOMMENDED LAND PATTERN (Unit: mm) D L A A1 A2 c θ Symbol In Millimeters In Inches MIN MAX MIN MAX A A A b c D E E e BSC BSC L θ TX
14 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS SOIC-14 D E E e b RECOMMENDED LAND PATTERN (Unit: mm) A A2 A3 R1 R L L1 h h A1 θ L2 In Millimeters In Inches Symbol MIN MAX MIN MAX A A A A b D E E e 1.27 BSC BSC L L REF REF L BSC 0.01 BSC R R h θ TX
15 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS TSSOP-14 D E1 E b e RECOMMENDED LAND PATTERN (Unit: mm) L A A1 A2 θ H c In Millimeters In Inches Symbol MIN MAX MIN MAX A A A b c D E E e BSC BSC L H 0.25 TYP 0.01 TYP θ TX
16 PACKAGE INFORMATION PACKAGE OUTLINE DIMENSIONS DIP-8 E1 A b1 e A2 L A1 b E2 c D E In Millimeters In Inches Symbol MIN MAX MIN MAX A A A b b BSC BSC c D E E e BSC BSC L E TX
17 PACKAGE INFORMATION TAPE AND REEL INFORMATION REEL DIMENSIONS TAPE DIMENSIONS P2 P0 W Q1 Q2 Q1 Q2 Q1 Q2 B0 Q3 Q4 Q3 Q4 Q3 Q4 Reel Diameter P1 A0 K0 Reel Width (W1) DIRECTION OF FEED NOTE: The picture is only for reference. Please make the object as the standard. KEY PARAMETER LIST OF TAPE AND REEL Package Type Reel Diameter Reel Width W1 A0 B0 K0 P0 P1 P2 W Pin1 Quadrant SOT Q3 SC Q3 SOIC Q1 MSOP Q1 SOIC Q1 TSSOP Q1 DD0001 TX
18 PACKAGE INFORMATION CARTON BOX DIMENSIONS NOTE: The picture is only for reference. Please make the object as the standard. KEY PARAMETER LIST OF CARTON BOX Reel Type Length Width Height Pizza/Carton 7 (Option) DD0002 TX
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Rev 0.1 DIO2026 190μA, 3MHz, Rail-to-Rail I/O CMOS Operational Amplifiers Features Supply Voltage Range: 2.5V to 5.5V Supply Current: Typical 190μA per channel Rail-to-Rail Input and Output ±1mV Typical
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Low Power, Precision, Auto-Zero Op Amps FEATURES Low offset voltage: 3 μv maximum Input offset drift:.3 μv/ C Single-supply operation: 2.7 V to 5.5 V High gain, CMRR, and PSRR Low input bias current: 25
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General-Purpose CMOS Rail-to-Rail Amplifiers AD854/AD8542/AD8544 FEATURES Single-supply operation: 2.7 V to 5.5 V Low supply current: 45 μa/amplifier Wide bandwidth: MHz No phase reversal Low input currents:
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600 na, Rail-to-Rail Input/Output Op Amps Features Low Quiescent Current: 600 na/amplifier Rail-to-Rail Input/Output Gain Bandwidth Product: 14 khz Wide Supply Voltage Range: 1.4V to 6.0V Unity Gain Stable
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a FEATURES True Single Supply Operation Output Swings Rail-to-Rail Input Voltage Range Extends Below Ground Single Supply Capability from + V to + V Dual Supply Capability from. V to 8 V Excellent Load
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GERAL DESCRIPTION The SGM0 is a constant frequency, current mode, synchronous step-up switching regulator. Its output currents can go as high as 7mA while using a single-cell alkaline, and discharge it
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